Orienting of spatial attention in Huntington's Disease

Maryline Couette1, Anne-Catherine Bachoud-Levi, Pierre Brugieres

  • 1INSERM U841-Equipe 1, Neuropsychologie Interventionnelle, Faculté de Médecine de Paris XII, Créteil, France. maryline.couette@gmail.com

Neuropsychologia
|February 5, 2008
PubMed

Insights

Huntington's Disease (HD) patients exhibit impaired spatial attention, specifically a deficit in disengaging attention from cued locations. This attentional dysfunction correlates with disease markers, suggesting it is a key feature of HD.

Area of Science:

  • Neuroscience
  • Cognitive Psychology
  • Neurology

Background:

  • Huntington's Disease (HD) is a neurodegenerative disorder affecting motor, cognitive, and psychiatric functions.
  • Spatial attention is crucial for information processing and is often impaired in neurological conditions.

Purpose of the Study:

  • To investigate the specific mechanisms of spatial attention deficits in individuals with Huntington's Disease.
  • To determine if attentional disengagement or orienting is primarily affected in HD patients.

Main Methods:

  • 14 Huntington's Disease patients and 14 age-matched controls completed cued response time (RT) tasks with peripheral cues.
  • Experiments varied cue validity and stimulus-onset asynchrony (SOA) to probe exogenous and endogenous attentional shifts.
  • Correlation analysis was performed between attentional performance and radiological/biological markers of HD.

Main Results:

  • HD patients showed a larger and more persistent validity effect, characterized by delayed inhibition of return (IOR) and increased cost for uncued targets.
  • Patients demonstrated impaired attentional disengagement from cued locations.
  • While endogenous orienting was preserved, it was significantly slowed in HD patients due to the disengage deficit.

Conclusions:

  • Spatial attention, particularly the ability to disengage attention, is significantly impaired in Huntington's Disease.
  • The observed attentional deficits correlate with HD biomarkers, suggesting a causal link.
  • Cued RT tasks show potential as a tool for monitoring HD progression and treatment efficacy.